Rheo-PIV of a shear-banding wormlike micellar solution under large amplitude oscillatory shear

被引:0
|
作者
Christopher J. Dimitriou
Laura Casanellas
Thomas J. Ober
Gareth H. McKinley
机构
[1] Massachusetts Institute of Technology,Hatsopoulos Microfluids Laboratory, Department of Mechanical Engineering
[2] Universitat de Barcelona,Departament d’Estructura i Constituents de la Matèria, Facultat de Física
来源
Rheologica Acta | 2012年 / 51卷
关键词
Shear banding; LAOS; Particle image velocimetry; Wall slip; Wormlike micelles;
D O I
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中图分类号
学科分类号
摘要
We explore the behavior of a wormlike micellar solution under both steady and large amplitude oscillatory shear (LAOS) in a cone–plate geometry through simultaneous bulk rheometry and localized velocimetric measurements. First, particle image velocimetry is used to show that the shear-banded profiles observed in steady shear are in qualitative agreement with previous results for flow in the cone–plate geometry. Then under LAOS, we observe the onset of shear-banded flow in the fluid as it is progressively deformed into the non-linear regime—this onset closely coincides with the appearance of higher harmonics in the periodic stress signal measured by the rheometer. These harmonics are quantified using the higher-order elastic and viscous Chebyshev coefficients en and vn, which are shown to grow as the banding behavior becomes more pronounced. The high resolution of the velocimetric imaging system enables spatiotemporal variations in the structure of the banded flow to be observed in great detail. Specifically, we observe that at large strain amplitudes (γ0 ≥ 1), the fluid exhibits a three-banded velocity profile with a high shear rate band located in-between two lower shear rate bands adjacent to each wall. This band persists over the full cycle of the oscillation, resulting in no phase lag being observed between the appearance of the band and the driving strain amplitude. In addition to the kinematic measurements of shear banding, the methods used to prevent wall slip and edge irregularities are discussed in detail, and these methods are shown to have a measurable effect on the stability boundaries of the shear-banded flow.
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页码:395 / 411
页数:16
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